Wright C S
J Mol Biol. 1984 Sep 5;178(1):91-104. doi: 10.1016/0022-2836(84)90232-8.
The two unique sugar binding sites in wheat germ agglutinin, located in the subunit/subunit interface of the dimer molecule and termed primary and secondary binding sites, are compared in the light of the newly obtained chemical amino acid sequence and a high-resolution electron density map (1.8 A). Homology was found in the three amino acid residues directly involved in sugar binding: Tyr73II, Ser62II, Glu115I in the primary site, and Tyr159I, Ser148I, Asp29II in the secondary site (subscripts refer to promoters I and II). Thirteen corresponding side-chain atoms of these three homologous residues in the two sites could be superimposed with a root-mean-square difference of 1.39 A. The three sugar binding residues are located in subsite 1 of each extended binding location and contribute to binding of the terminal, non-reducing N-acetyl-D-glucosamine and N-acetyl-D-neuraminic acid residues only, and they provide three hydrogen bonds for complex stabilization. Two hydrogen bonds are made with the carbonyl and amido portions of the N-acetyl group and the third with the C-3 OH group of the sugar ring. It is suggested that small differences in the sugar binding affinities at these two unique sites exist, due to the different numbers of van der Waals' interactions made at these sites, which contribute to stabilizing, for instance, the wheat germ agglutinin/N,N'-diacetyl-chitobiose complex. The single tryptophan residue is located at a distance of approximately 13 A from the primary site and is thought to have no affect on sugar binding. In addition, the disposition of the four saccharide binding sites of the dimer with respect to three local, pseudo 2-fold symmetry axes, relating domains of opposite protomers, is discussed.
从小麦胚凝集素二聚体分子的亚基/亚基界面中发现了两个独特的糖结合位点,分别称为一级和二级结合位点。结合新获得的化学氨基酸序列和高分辨率电子密度图(1.8 Å)对这两个位点进行了比较。在直接参与糖结合的三个氨基酸残基中发现了同源性:一级位点中的Tyr73II、Ser62II、Glu115I,以及二级位点中的Tyr159I、Ser148I、Asp29II(下标指启动子I和II)。这两个位点中这三个同源残基的13个相应侧链原子可以叠加,均方根差为1.39 Å。这三个糖结合残基位于每个延伸结合位点的亚位点1中,仅有助于末端非还原型N-乙酰-D-葡萄糖胺和N-乙酰-D-神经氨酸残基的结合,并且它们为复合物的稳定提供三个氢键。两个氢键与N-乙酰基的羰基和酰胺部分形成,第三个氢键与糖环的C-3 OH基团形成。由于在这些位点形成的范德华相互作用数量不同,这两个独特位点的糖结合亲和力存在微小差异,例如,这有助于稳定小麦胚凝集素/N,N'-二乙酰壳二糖复合物。单个色氨酸残基位于距一级位点约13 Å处,被认为对糖结合没有影响。此外,还讨论了二聚体的四个糖结合位点相对于三个局部伪二重对称轴(与相对原体的结构域相关)的排列。